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Domesticated cynomolgus monkey embryonic stem cells allow the generation of neonatal interspecies chimeric pigs

机译:驯养的鱼鹰猴胚胎干细胞允许生成新生儿嵌合猪

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Blastocyst complementation by pluripotent stem cell (PSC) injection is believed to be the most promising method to generate xenogeneic organs. However, ethical issues prevent the study of human chimeras in the late embryonic stage of development. Primate embryonic stem cells (ESCs), which have similar pluripotency to human ESCs, are a good model for studying interspecies chimerism and organ generation. However, whether primate ESCs can be used in xenogenous grafts remains unclear. In this study, we evaluated the chimeric ability of cynomolgus monkey ( Macaca fascicularis ) ESCs (cmESCs) in pigs, which are excellent hosts because of their many similarities to humans. We report an optimized culture medium that enhanced the anti-apoptotic ability of cmESCs and improved the development of chimeric embryos, in which domesticated cmESCs (D-ESCs) injected into pig blastocysts differentiated into cells of all three germ layers. In addition, we obtained two neonatal interspecies chimeras, in which we observed tissue-specific D-ESC differentiation. Taken together, the results demonstrate the capability of D-ESCs to integrate and differentiate into functional cells in a porcine model, with a chimeric ratio of 0.001–0.0001 in different neonate tissues. We believe this work will facilitate future developments in xenogeneic organogenesis, bringing us one step closer to producing tissue-specific functional cells and organs in a large animal model through interspecies blastocyst complementation.
机译:多能干细胞(PSC)注射的胚泡互补被认为是产生异种器官的最有希望的方法。然而,道德问题可以防止人类嵌合在晚期胚胎发育中的研究。具有类似的人体Escs的类似多能性的灵长类胚胎干细胞(ESC)是学习Interpecies Chimerism和器官生成的良好模型。然而,在Xenenous acrafts中可以使用灵长类主量ESC仍然不清楚。在这项研究中,我们评估了猪中猪肉(Macaca Fascicularis)Esc(MacACA Fascularis)ESC(CMESCs)的嵌合能力,这是优异的宿主,因为它们与人类的许多相似之处。我们报告了一种优化的培养基,增强了CMESCs的抗凋亡能力,并改善了嵌合胚胎的发育,其中驯化的CMESC(D-ESC)注入到猪胚囊中的分化为所有三种胚层的细胞。此外,我们获得了两种新生儿间隔嵌合体,其中我们观察到了组织特异性D-ESC分化。总之,结果证明了D-ESC将其与猪模型中功能细胞集成和分化成功能细胞的能力,其不同新生组组织中的嵌合率为0.001-0.0001。我们认为这项工作将促进未来异种器官组织的未来发展,使我们更接近在大型动物模型中产生组织特异性功能细胞和器官,通过间隙吻合互补。

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